Large Eddy simulations of isolated and installed jet noise using the high-order discontinuous Galerkin method
File(s)AIAA_SciTech_2023_Lindblad_et_al.pdf (7.26 MB)
Accepted version
Author(s)
Type
Conference Paper
Abstract
A recently developed computational framework for jet noise is used to compute the noise generated by an isolated and installed jet. The framework consists of two parts. In the first part, the spectral/hp element framework Nektar++ is used to compute the near-field flow. Nektar++ solves the unfiltered Navier-Stokes equations on unstructured grids using the high-order discontinuous Galerkin method. The discrete equations are integrated in time using an implicit scheme based on the matrix-free Newton-GMRES method. In the second part, the Antares library is used to compute the far-field noise. Antares solves the Ffowcs Williams - Hawkings equation for a permeable integration surface in the time domain using a source-time dominant algorithm. The simulations are validated against experimental data obtained in the Doak Laboratory Flight Jet Rig, located at the University of Southampton. For the isolated jet, good agreement is achieved, both in terms of the flow statistics and the far-field noise. The discrepancies observed for the isolated jet are believed to be caused by an under-resolved boundary layer in the simulations. For the installed jet, the flow statistics are also well predicted. In the far-field, very good agreement is achieved for downstream observers. For upstream observers, some discrepancies are observed for very high and very low frequencies.
Date Issued
2023-01-23
Date Acceptance
2023-01-01
Citation
AIAA SCITECH 2023 Forum, 2023, pp.1-21
Publisher
American Institute of Aeronautics and Astronautics
Start Page
1
End Page
21
Journal / Book Title
AIAA SCITECH 2023 Forum
Copyright Statement
Copyright © 2023 by Daniel Lindblad, Spencer J. Sherwin, Chris D. Cantwell, Jack L.T. Lawrence, Anderson R. Proenca, and Margarida Moragues Ginard. Published by the American Institute of Aeronautics and Astronautics, Inc., with permission.
Identifier
https://arc.aiaa.org/doi/10.2514/6.2023-1546
Source
AIAA SCITECH 2023 Forum
Publication Status
Published
Start Date
2023-01-23
Finish Date
2023-01-27
Coverage Spatial
Online
Date Publish Online
2023-01-19